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RIKEN team develops high-performance lithium-iodine battery system with higher energy density than conventional Li-ion

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The working concept of I3 – /I – redox reaction in the aqueous Li-I 2 battery. A team from Japan’s RIKEN, led by Hye Ryung Byon, has developed a lithium-iodine (Li-I 2 ) battery system with a significantly higher energy density than conventional lithium-ion batteries. Zhao et al. Click to enlarge. Zhao et al.

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DOE announces $139M in funding for 55 projects to advance innovative vehicle technologies

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Area of Interest (AOI) 01a: Lithium Ion Batteries using Silicon-based Anodes-Research. Rational Electrolyte Design for Li-ion Batteries with Micro-Sized Silicon Anodes. AOI 01b: Lithium Ion Batteries using Silicon-based Anodes-Research, Development, and Validation. Project description. Federal share. Enovix Corporation.

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DOE announces $26.6M SBIR/STTR FY15 Phase 1 Release 2 awards; fuel cells, batteries, power electronics and efficient combustion engines

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SBIR and STTR programs at DOE have three distinct phases: Phase I explores the feasibility of innovative concepts with awards up to $225,000 over 9 months. ICE Ignition Using Transient Plasma Acceleration Lean-burn gasoline engines have trouble reliably igniting gasoline and air mixtures. 148,393.82. 149,999.70. 149,975.00.

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DOE to award almost $20M to new research and development projects for advanced vehicle technologies

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This topic seeks proof-of-concept, or seedling projects that complement the VTO Battery500 Consortium’s research to more than double the specific energy (to 500 watt-hours per kilogram) of lithium battery technologies which will result in smaller, lighter weight, less expensive battery packs, and more affordable electric vehicles.

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US DOE awards more than $175M to 40 projects for advanced vehicle research and development

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This project will enable diesel-like efficiency and increased maximum power output in a gasoline engine by using a secondary fuel to suppress engine knock under high load. This project will develop a new process that enables low-cost, domestic manufacturing of magnesium. UChicago Argonne LLC. Zoltek Companies, Inc. Amprius, Inc.

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ARPA-E RANGE: $20M for robust transformational energy storage systems for EVs; 3x the range at 1/3 the cost

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If successful, these vehicles will provide near cost and range parity to gasoline-powered ICE vehicles, ARPA-E said. Areas of particular interests are high conductivity inorganic electrolytes for lithium and other alkaline metal ion systems; and solid state and hybrid battery designs and low cost manufacturing processes.

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ARPA-E Selects 37 Projects for $106M in Funding in Second Round; Electrofuels, Better Batteries and Carbon Capture

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More than 540 initial concept papers were received in the three focus areas. Electrofuels approaches will use organisms able to extract energy from other sources, such as solar-derived electricity or hydrogen or earth-abundant metal ions. This process is less than 1% efficient at converting sunlight to stored chemical energy.

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